Amorphous and Microcrystalline Semiconductor Devices

Amorphous and Microcrystalline Semiconductor Devices PDF Author: Jerzy Kanicki
Publisher: Artech House Materials Science
ISBN:
Category : Science
Languages : en
Pages : 792

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Book Description
Explores key aspects of materials and device physics including electronic properties and stability issues. Supplemented by 321 equations, 370 illustrations, and an extensive list of references.

Amorphous and Microcrystalline Semiconductor Devices

Amorphous and Microcrystalline Semiconductor Devices PDF Author: Jerzy Kanicki
Publisher: Artech House Materials Science
ISBN:
Category : Science
Languages : en
Pages : 792

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Book Description
Explores key aspects of materials and device physics including electronic properties and stability issues. Supplemented by 321 equations, 370 illustrations, and an extensive list of references.

Amorphous and Microcrystalline Semiconductor Devices

Amorphous and Microcrystalline Semiconductor Devices PDF Author: Jerzy Kanicki
Publisher:
ISBN:
Category : Amorphous semiconductors
Languages : en
Pages : 458

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Book Description


Amorphous and Microcrystalline Silicon Solar Cells: Modeling, Materials and Device Technology

Amorphous and Microcrystalline Silicon Solar Cells: Modeling, Materials and Device Technology PDF Author: Ruud E.I. Schropp
Publisher: Springer
ISBN: 1461556317
Category : Technology & Engineering
Languages : en
Pages : 215

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Book Description
Amorphous silicon solar cell technology has evolved considerably since the first amorphous silicon solar cells were made at RCA Laboratories in 1974. Scien tists working in a number of laboratories worldwide have developed improved alloys based on hydrogenated amorphous silicon and microcrystalline silicon. Other scientists have developed new methods for growing these thin films while yet others have developed new photovoltaic (PV) device structures with im proved conversion efficiencies. In the last two years, several companies have constructed multi-megawatt manufacturing plants that can produce large-area, multijunction amorphous silicon PV modules. A growing number of people be lieve that thin-film photovoltaics will be integrated into buildings on a large scale in the next few decades and will be able to make a major contribution to the world's energy needs. In this book, Ruud E. I. Schropp and Miro Zeman provide an authoritative overview of the current status of thin film solar cells based on amorphous and microcrystalline silicon. They review the significant developments that have occurred during the evolution of the technology and also discuss the most im portant recent innovations in the deposition of the materials, the understanding of the physics, and the fabrication and modeling of the devices.

Amorphous and Microcrystalline Silicon Technology - 1998: Volume 507

Amorphous and Microcrystalline Silicon Technology - 1998: Volume 507 PDF Author: Ruud Schropp
Publisher: Cambridge University Press
ISBN: 9781558994133
Category : Technology & Engineering
Languages : en
Pages : 0

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Book Description
Although this is the 16th volume in a long-standing and successful series, the focus is no longer limited to hydrogenated amorphous silicon (a-Si:H). The distinction between short- and medium-range order, and between homogeneous and heterogeneous semiconductor materials, is indeed too difficult to maintain. Instead, the volume covers amorphous and microcrystalline silicon from materials physics to new applications. Papers from a joint session with a symposium on Flat-Panel Display Materials and Large-Area Processes are included. The volume also features special focused sessions on heterogeneous materials, color sensors and radiation imaging, and parameter extraction and device modelling. Topics include: amorphous and polycrystalline thin-film transistors; solar cells; color and X-ray sensors, novel devices, luminescence and sensitization; device modelling and parameter extraction; growth, alloys and clathrates; metastability, hydrogen, atomic and electronic structure; defects and charge transport; and heterogeneous silicon - formation, properties and devices.

Amorphous and Microcrystalline Silicon Technology - 1997: Volume 467

Amorphous and Microcrystalline Silicon Technology - 1997: Volume 467 PDF Author: Michael Hack
Publisher: Materials Research Society
ISBN: 9781558993716
Category : Technology & Engineering
Languages : en
Pages : 0

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Book Description
While the original focus of this long-standing series from the Materials Research Society was on hydrogenated amorphous silicon, the symposia have now expanded to incorporate microcrystalline silicon. The two, in fact, are very closely connected since the latter material can be grown by making comparatively small changes to the deposition conditions for amorphous silicon. This book offers an interesting variety of papers on deposition techniques, materials properties, characterization methods and devices - nearly all focused on thin-film forms of hydrogenated silicon. Topics include: Staebler-Wronski and fundamental defect studies in amorphous silicon; the story of hydrogen in amorphous silicon; photoelectric properties of amorphous silicon; deposition and properties of microcrystalline silicon; deposition studies for amorphous silicon and related materials; solar cells; thin-film transistors and sensors and novel device concepts.

Amorphous and Microcrystalline Silicon

Amorphous and Microcrystalline Silicon PDF Author: Norbert H. Nickel
Publisher:
ISBN: 9783527405121
Category : Amorphous semiconductors
Languages : en
Pages : 0

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Book Description
physica status solidi (c) - conferences and critical reviews publishes conference proceedings, ranging from large international meetings to specialized topical workshops as well as collections of topical reviews on various areas of current solid state physics research. This Special Issue reviews the latest experimental and theoretical studies in the field of amorphous, nano- and microcrystalline silicon covering materials preparation, electrical and optical properties, characterization of defects, the role of hydrogen, device fabrication and characterization, and novel device applications.

Physics of Amorphous Semiconductors

Physics of Amorphous Semiconductors PDF Author: Kazuo Morigaki
Publisher: World Scientific
ISBN: 9789810213817
Category : Technology & Engineering
Languages : en
Pages : 440

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Book Description
This is a useful textbook for graduate students in the fields of solid state physics and chemistry as well as electronic engineering. Presenting the fundamentals of amorphous semiconductors clearly, it will be essential reading for young scientists intending to develop new preparation techniques for more ideal amorphous semiconductors e.g. a-Si: H, to fabricate stable and efficient solar cells and thin film transistors and new artificial amorphous materials such as multilayers for quantum devices.A large portion is devoted to the latest developments of amorphous semiconductors including electronic properties of a-Si: H, nature of weak bonds and gap states in a-Si: H, mechanisms for light-induced defect creation in a-Si: H and chalcogenides, quantum phenomena in multilayer fi

Technology and Applications of Amorphous Silicon

Technology and Applications of Amorphous Silicon PDF Author: Robert A. Street
Publisher: Springer Science & Business Media
ISBN: 3662041413
Category : Technology & Engineering
Languages : en
Pages : 429

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Book Description
This book gives the first systematic and complete survey of technology and application of amorphous silicon, a material with a huge potential in electronic applications. The book features contributions by world-wide leading researchers in this field.

Amorphous and Heterogeneous Silicon-Based Films - 2001: Volume 664

Amorphous and Heterogeneous Silicon-Based Films - 2001: Volume 664 PDF Author: Martin Stutzmann
Publisher: Cambridge University Press
ISBN: 9781558996007
Category : Technology & Engineering
Languages : en
Pages : 0

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Book Description
This book looks at the exchange of information on the physics and application of amorphous and microcrystalline silicon and presents exciting new developments. Significant progress has been made in the high- or even ultra-high-rate deposition of device-quality amorphous and microcrystalline silicon, in in-situ growth characterization techniques and in state-of-the-art computer modeling of deposition processes. These issues are especially important for the successful future commercialization of silicon thin-film devices. The latest results concerning silicon thin-film solar cells are highlighted. Active matrix arrays for displays or sensors continue to be the second major application of thin silicon films, and again much progress has been made in that area. Topics include: nucleation and growth; novel concepts; hot-wire CVD; high-rate deposition; growth of silicon and silicon-alloy thin films; crystallization; silicon-based alloys; structural properties of heterogeneous silicon films; dopants and impurities; amorphous and silicon solar cells; metastability; hydrogen and metastability; transport in µc-Si; thin-film transistors; hydrogenation and oxidation; defects and defect spectroscopy; structural and electronic properties of thin silicon films; heterojunctions; TFTs and sensors; amorphous-to-microcrystalline transition and structural relaxation and diffusion.

Amorphous Semiconductor Technologies and Devices

Amorphous Semiconductor Technologies and Devices PDF Author: Yoshihiro Hamakawa
Publisher: Elsevier Science & Technology
ISBN: 9780444879776
Category : Semiconductors
Languages : en
Pages : 330

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Book Description
The introduction to this volume presents an overview of the recent significant progress in the field of amorphous silicon and its alloys, demonstrating the strong potential need for a low-cost solar cell in the photovoltaic project and other new application fields. Characteristic features such as new electronic material are analyzed, and the prospects of remarkable growth and application fields are discussed, together with other topics in this rapidly expanding field. The second chapter reviews several topics in the field of basic physics, where integrations of various kinds of measurement data on the gap and tail states in a-Si by ICTS and DLTS have made it possible to model them numerically and to compare the results with theoretical calculation. Emphasis is placed on the effect of dangling bond termination by monovalent atoms, impurity processes in a-Si, and NMR and ENDOR studies. In chapter 3 a review is given of new aspects of film preparation technologies and their growth kinetics, especially high-deposition-rate processing and photo-CVD. Recent topics on amorphous silicon alloys and c(micro-crystalline)-Si film growth technologies are also reviewed.